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Biophysical and Biomedical Measurement Group at NIST in Gaithersburg, MD seeks an aposterioral research associate to develop nanopore spectroscopy measurements of ionizing-radiation damage in polymers and nucleic acids. The role builds on biodosimetry work using resistive-pulse nanopore measurements and expands to cellulose, DNA, and RNA under varying dose and radiation quality.
Responsibilities include designing experiments, preparing polymers and nucleic acids for irradiation, measuring
The Biophysical and Biomedical Measurement Group at NIST (Gaithersburg, MD) is seeking an apostdoctoral research associate to develop nanopore spectroscopy measurements of ionizing-radiation damage topolymers and nucleic acids.
This project builds on recent NIST work demonstrating single-molecule biodosimetry using resistive-pulse nanopore measurements of radiation-induced DNA fragmentation. The next stage will expand this approach to quantify chain scission and molecular damage in standard polymers, including cellulose, and in nucleic acids such as DNA and RNA. Measurements will be performed as a function of absorbed dose and radiation quality, including radiation type, linear energy transfer (LET), dose rate, and related conditions.
The broader goal is to connect molecular damage to absorbed dose (Gy), radiation chemistry, and relative biological effectiveness (RBE), providing a complementary molecular measurement approach for radiation dosimetry, cancer-therapy response assessment, and radiological emergency response.
This position is within the Biophysical Metrology and Inference program at NIST, which develops measurement approaches, physical models, and data-analysis methods that connect biological signals to quantitative mechanism and uncertainty.
U.S. citizenship is preferred; for some appointment mechanisms, eligibility depends on citizenship.
Group information:
https://www.nist.gov/pml/microsystems-and-nanotechnology-division/biophysical-and-biomedical-measurement-group
Related publication:
Single-Molecule Biodosimetry Analytical Chemistry 97, 22004–22012 (2025)
https://doi.org/10.1021/acs.analchem.5c03303
Related NIST story:
New Technique for Measuring DNA Damage Could Improve Cancer Therapy and Radiological Emergency Response
https://www.nist.gov/news-events/news/2025/08/new-technique-measuring-dna-damage-could-improve-cancer-therapy-and